Amanote Research
Register
Sign In
Discover open access scientific publications
Search, annotate, share and cite publications
Publications by Klaus Lendzian
Nitrite Reduction in Reconstituted and Whole Spinach Chloroplasts During Carbon Dioxide Reduction
Plant Physiology
Plant Science
Genetics
Physiology
In Vivo Control Mechanism of the Carboxylation Reaction
Related publications
Carbon Dioxide and the Reduction of Indophenol and Ferricyanide by Chloroplasts
Plant Physiology
Plant Science
Genetics
Physiology
Dependence of Nitrite Reduction on Electron Transport Chloroplasts
Plant Physiology
Plant Science
Genetics
Physiology
Nitrite Assimilation and Amino Nitrogen Synthesis in Isolated Spinach Chloroplasts
Plant Physiology
Plant Science
Genetics
Physiology
Sulfur Dioxide Inhibition of Photosynthesis in Isolated Spinach Chloroplasts
Plant Physiology
Plant Science
Genetics
Physiology
Inhibition of Photosynthetic Carbon Dioxide Fixation in Isolated Spinach Chloroplasts Exposed to Reduced Osmotic Potentials
Plant Physiology
Plant Science
Genetics
Physiology
Influence of Nanoflower FeTiO3 in Carbon Dioxide Reduction
SN Applied Sciences
Reduction of Carbon Dioxide in a Closed System.
Kagaku Kogaku Ronbunshu
Chemistry
Chemical Engineering
Tenacious Mass Transfer Limitations Drive Catalytic Selectivity During Electrochemical Carbon Dioxide Reduction
Tenacious Mass Transfer Limitations Drive Catalytic Selectivity During Electrochemical Carbon Dioxide Reduction